Avtsyn Research Institute of Human Morphology, Petrovsky National Research Centre of Surgery, Moscow, 117418, Russia.
Faculty of Biology, Lomonosov Moscow State University, Moscow, 119234, Russia.
Biochemistry (Mosc). 2023 Jun;88(6):741-757. doi: 10.1134/S0006297923060032.
Hypoxia causes changes in transcription of the genes that contribute to adaptation of the cells to low levels of oxygen. The main mechanism regulating cellular response to hypoxia is activation of hypoxia-inducible transcription factors (HIF), which include several isoforms and control expression of more than a thousand genes. HIF activity is regulated at various levels, including by small non-coding RNA molecules called microRNAs (miRNAs). miRNAs regulate cellular response to hypoxia by influencing activation of HIF, its degradation, and translation of HIF-dependent proteins. At the same time, HIFs also affect miRNAs biogenesis. Data on the relationship of a particular HIF isoform with miRNAs are contradictory, since studies have been performed using different cell lines, various types of experimental animals and clinical material, as well as at different oxygen concentrations and durations of hypoxic exposure. In addition, HIF expression may be affected by the initial resistance of organisms to lack of oxygen, which has not been taken into account in the studies. This review analyzes the data on the effect of hypoxia on biogenesis and functioning of miRNAs, as well as on the effect of miRNAs on mRNAs of the genes involved in adaptation to oxygen deficiency. Understanding the mechanisms of relationship between HIF, hypoxia, and miRNA is necessary to develop new approaches to personalized therapy for diseases accompanied by oxygen deficiency.
缺氧会导致参与细胞适应低氧水平的基因转录发生变化。调节细胞对缺氧反应的主要机制是激活缺氧诱导转录因子(HIF),它包括几种同工型,并控制超过一千个基因的表达。HIF 活性在多个水平受到调节,包括通过称为 microRNAs (miRNAs) 的小非编码 RNA 分子。miRNAs 通过影响 HIF 的激活、降解和 HIF 依赖性蛋白的翻译来调节细胞对缺氧的反应。同时,HIF 也会影响 miRNA 的生物发生。与特定 HIF 同工型相关的 miRNA 的数据存在矛盾,因为这些研究使用了不同的细胞系、不同类型的实验动物和临床材料,以及在不同的氧浓度和缺氧暴露时间下进行。此外,HIF 的表达可能受到生物体对缺氧的初始抗性的影响,而这些研究并未考虑到这一点。本综述分析了缺氧对 miRNA 生物发生和功能的影响,以及 miRNA 对参与缺氧适应的基因的 mRNAs 的影响的数据。了解 HIF、缺氧和 miRNA 之间关系的机制对于开发伴随缺氧的疾病的个性化治疗新方法是必要的。